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Size-Based Separation of Particles and Cells Utilizing Viscoelastic Effects in Straight Microchannels

机译:基于尺寸的颗粒和细胞的分离,利用直接微通道中的粘弹性效应

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Viscoelasticity-induced particle Migration has recently received increasing attention due to its ability to obtain high-quality focusing over a wide range of flow rates. However, its application is limited to low throughput regime since the particles can defocus as flow rate increases. Using an engineered carrier medium with constant and low viscosity and strong elasticity, the sample flow rates are improved to be 1 order of magnitude higher than those in existing studies. Utilizing differential focusing of particles of different sizes, here, we present sheathless particle/cell separation in simple straight microchannels that possess excellent parallelizability for further throughput enhancement. The present method can be implemented over a wide range of particle/cell sizes and flow rates. We successfully separate small particles from larger particles, MCF-7 cells from red blood cells (RBCs), and Escherichia colt (E. colt) bacteria from RBCs in different straight microchannels. The proposed method could broaden the applications of viscoelastic microfluidic devices to particle/cell separation due to the enhanced sample throughput and simple channel design.
机译:粘弹性诱导的颗粒迁移由于其能够在宽范围的流量范围内获得高质量聚焦而受到越来越多的关注。但是,其应用仅限于低通量方案,因为随着流速的增加,颗粒会散焦。使用具有恒定,低粘度和强弹性的工程载体介质,样品流速比现有研究提高了1个数量级。利用不同大小的颗粒的不同聚焦,在这里,我们提出了在简单的直线微通道中进行无鞘颗粒/细胞分离,该通道具有出色的平行性,可进一步提高通量。本方法可以在较大范围的颗粒/孔尺寸和流速上实施。我们成功地将小颗粒与大颗粒分离,将MCF-7细胞从红细胞(RBC)中分离出来,并将大肠杆菌(E. colt)细菌从RBC中分离出不同的笔直微通道。由于提高了样品通量和简单的通道设计,所提出的方法可以将粘弹性微流体装置的应用扩展到颗粒/细胞分离。

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